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Synroc
1, 2002, Sheraton Crystal City Hotel, Arlington, Virginia
Ceramic Mineral Waste-Forms for Nuclear Waste Immobilization
Economic Development Board 1 South Australia
Progress Report
Letterhead World Nuclear Association
Inquiry Into Nuclear Prohibition
The Safety of the Nuclear Fuel Cycle
Back-End of the Fuel Cycle: Spent Nuclear Fuel and Irradiated Materials
Methodology to Manage Material and Waste from Nuclear Decommissioning Waste Management & Decommissioning Working Group
Process and Waste Form Options for Plutonium Immobilization
The Effect of Composition on the Structure Symmetry and Stability of Tunnel-Structured Hollandite Ceramics for Nuclear Waste Immobilization" (2018)
Synroc for Plutonium Disposal AU0019553
Treatment of Spent Nuclear Fuel for Separation, Immobilization and Disposal of Heat Generating High Level Fission Products, Caesium and Strontium
Waste from Innovative Types of Reactors and Fuel Cycles No
High-Level Waste Melter Study Report
Immobilization of Excess Weapon Plutonium: a Better Alternative to Glass
Alternatives to MOX Direct-Disposal Options for Stockpiles of Separated Plutonium
Advanced Nuclear Fuel Cycles and Radioactive Waste Management
Top View
Immobilization of High Level Waste in Synroc Abstract
Aspirations for Thermal Waste Treatment of Decommissioning
GIF Annual Report Was in 2017
Chemical Aspects of Synroc Powder Preparation Using the Sandia Process
Application of Partitioning/Transmutation Of
Past and Present Applications of Synroc
Radioactive Waste
IAEA Nuclear Energy Series Status of Developments in the Back End of the Fast Reactor Fuel Cycle
Nuclear Waste Management.Indd
Submission by Ansto to Inquiry on Non-Fossil Fuel Energy by House of Representatives Standing Committee on Industry and Resources